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Céline Ruscher

Showing results (1-10 of 9) with videos related to

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Soft Matter|September 9, 2020
Residual stress distributions in amorphous solids from atomistic simulationsCéline Ruscher, Jörg Rottler
Physical Review. E|October 16, 2021
Signatures of the spatial extent of plastic events in the yielding transition in amorphous solidsDaniel Korchinski, Céline Ruscher, Jörg Rottler
The Journal of Chemical Physics|December 1, 2023
Thawed matrix method for computing local mechanical properties of amorphous solidsJörg Rottler, Céline Ruscher, Peter Sollich
Journal of Computational Chemistry|March 6, 2021
MLLPA: A Machine Learning-assisted Python module to study phase-specific events in lipid membranesVivien Walter, Céline Ruscher, Olivier Benzerara, et al.
Physical Review. E|October 21, 2022
Stress overshoot, hysteresis, and the Bauschinger effect in sheared dense colloidal suspensionsDmytro Kushnir, Céline Ruscher, Eckhard Bartsch, et al.
Physical Review. E|August 17, 2022
Computational indentation in highly cross-linked polymer networksManoj Kumar Maurya, Céline Ruscher, Debashish Mukherji, et al.
Physical Chemistry Chemical Physics : PCCP|August 20, 2020
A machine learning study of the two states model for lipid bilayer phase transitionsVivien Walter, Céline Ruscher, Olivier Benzerara, et al.
Biochimica Et Biophysica Acta. Biomembranes|July 31, 2021
Ripple-like instability in the simulated gel phase of finite size phosphocholine bilayersVivien Walter, Céline Ruscher, Adrien Gola, et al.
The European Physical Journal. E, Soft Matter|September 30, 2016
Controlling Marangoni-induced instabilities in spin-cast polymer films: How to prepare uniform filmsPaul D Fowler, Céline Ruscher, Joshua D McGraw, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Soft Matter|September 9, 2020
Residual stress distributions in amorphous solids from atomistic simulationsCéline Ruscher, Jörg Rottler
Physical Review. E|October 16, 2021
Signatures of the spatial extent of plastic events in the yielding transition in amorphous solidsDaniel Korchinski, Céline Ruscher, Jörg Rottler
The Journal of Chemical Physics|December 1, 2023
Thawed matrix method for computing local mechanical properties of amorphous solidsJörg Rottler, Céline Ruscher, Peter Sollich
Journal of Computational Chemistry|March 6, 2021
MLLPA: A Machine Learning-assisted Python module to study phase-specific events in lipid membranesVivien Walter, Céline Ruscher, Olivier Benzerara, et al.
Physical Review. E|October 21, 2022
Stress overshoot, hysteresis, and the Bauschinger effect in sheared dense colloidal suspensionsDmytro Kushnir, Céline Ruscher, Eckhard Bartsch, et al.
Physical Review. E|August 17, 2022
Computational indentation in highly cross-linked polymer networksManoj Kumar Maurya, Céline Ruscher, Debashish Mukherji, et al.
Physical Chemistry Chemical Physics : PCCP|August 20, 2020
A machine learning study of the two states model for lipid bilayer phase transitionsVivien Walter, Céline Ruscher, Olivier Benzerara, et al.
Biochimica Et Biophysica Acta. Biomembranes|July 31, 2021
Ripple-like instability in the simulated gel phase of finite size phosphocholine bilayersVivien Walter, Céline Ruscher, Adrien Gola, et al.
The European Physical Journal. E, Soft Matter|September 30, 2016
Controlling Marangoni-induced instabilities in spin-cast polymer films: How to prepare uniform filmsPaul D Fowler, Céline Ruscher, Joshua D McGraw, et al.
Pageof 1